Center for Computational Natural Sciences and Bioinformatics, International Institute of Information Technology, Hyderabad, India.
PLoS One. 2018 Jun 1;13(6):e0198420. doi: 10.1371/journal.pone.0198420. eCollection 2018.
Cells switch between quiescence and proliferation states for maintaining tissue homeostasis and regeneration. At the restriction point (R-point), cells become irreversibly committed to the completion of the cell cycle independent of mitogen. The mechanism involving hyper-phosphorylation of retinoblastoma (Rb) and activation of transcription factor E2F is linked to the R-point passage. However, stress stimuli trigger exit from the cell cycle back to the mitogen-sensitive quiescent state after Rb hyper-phosphorylation but only until APC/CCdh1 inactivation. In this study, we developed a mathematical model to investigate the reversible transition between quiescence and proliferation in mammalian cells with respect to mitogen and stress signals. The model integrates the current mechanistic knowledge and accounts for the recent experimental observations with cells exiting quiescence and proliferating cells. We show that Cyclin E:Cdk2 couples Rb-E2F and APC/CCdh1 bistable switches and temporally segregates the R-point and the G1/S transition. A redox-dependent mutual antagonism between APC/CCdh1 and its inhibitor Emi1 makes the inactivation of APC/CCdh1 bistable. We show that the levels of Cdk inhibitor (CKI) and mitogen control the reversible transition between quiescence and proliferation. Further, we propose that shifting of the mitogen-induced transcriptional program to G2-phase in proliferating cells might result in an intermediate Cdk2 activity at the mitotic exit and in the immediate inactivation of APC/CCdh1. Our study builds a coherent framework and generates hypotheses that can be further explored by experiments.
细胞在静息和增殖状态之间切换,以维持组织内稳态和再生。在限制点(R 点),细胞不可逆地完成细胞周期,而不受有丝分裂原的影响。涉及视网膜母细胞瘤(Rb)的过度磷酸化和转录因子 E2F 的激活的机制与 R 点通过有关。然而,应激刺激会在 Rb 过度磷酸化后触发细胞周期退出并返回有丝分裂原敏感的静息状态,但仅在 APC/CCdh1 失活之前。在这项研究中,我们开发了一个数学模型,以研究有丝分裂原和应激信号对哺乳动物细胞中静息和增殖之间可逆转换的影响。该模型整合了当前的机制知识,并考虑了最近的实验观察结果,包括细胞从静息状态退出和增殖细胞。我们表明,细胞周期蛋白 E:Cdk2 偶联 Rb-E2F 和 APC/CCdh1 双稳态开关,并在时间上分离 R 点和 G1/S 转换。APC/CCdh1 与其抑制剂 Emi1 之间的氧化还原依赖性相互拮抗使 APC/CCdh1 失活成为双稳态。我们表明,Cdk 抑制剂(CKI)和有丝分裂原的水平控制着静息和增殖之间的可逆转换。此外,我们提出,在增殖细胞中,有丝分裂原诱导的转录程序向 G2 期的转移可能导致有丝分裂退出时 Cdk2 活性的中间状态,并立即使 APC/CCdh1 失活。我们的研究构建了一个连贯的框架,并提出了可以通过实验进一步探索的假设。